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Metals production, CO
2
mineralization and LCA
Ron Zevenhoven
*
*
Corresponding author for this work
Laboratory of Process and Systems Engineering
Technologies for a Sustainable Future
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
5
Citations (Scopus)
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2
mineralization and LCA'. Together they form a unique fingerprint.
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Physics
Life Cycle Assessment
100%
Carbon Dioxide
66%
Emission
33%
Metal
22%
Carbon Dioxide
11%
Environment
11%
Metals
11%
Waste
11%
Impact
11%
Gases
11%
Streams
11%
Earth and Planetary Sciences
Emission
33%
Mineralization
22%
Greenhouse Gas
22%
By-Product
11%
Calcium Carbonate
11%
Blast Furnace
11%
Energy Use
11%
Fixation
11%
Carbon Dioxide
11%
High Voltage
11%
Reuse of Materials
11%
Industrial Activity
11%
Impact
11%
Environment
11%
Stream
11%
Efficiency
11%
Waste
11%
Guideline
11%
Gas
11%
Engineering
Production
33%
Greenhouse Gas
22%
Blast Furnace
11%
Environmental Footprint
11%
Sustainable Production
11%
Great Potential
11%
Experimental Work
11%
Starting Point
11%
Industrial Activity
11%
Process Simulation
11%
Solid Material
11%
Furnace Top
11%
Material Production
11%
Metallic Nanoparticles
11%
Steelmaking Slag
11%
Environment
11%
Efficiency
11%
Guideline
11%
Chemical Engineering
Calcium Carbonate
11%
Carbon Dioxide
11%
Chemistry
Mining
11%